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利用红外光谱研究肌浆网Ca(2+)-ATP酶从ATP及ATP类似物的磷酸化作用。

Phosphorylation of the sarcoplasmic reticulum Ca(2+)-ATPase from ATP and ATP analogs studied by infrared spectroscopy.

作者信息

Liu Man, Barth Andreas

机构信息

Institut für Biophysik, Johann Wolfgang Goethe-Universität, 60596 Frankfurt am Main, Germany.

出版信息

J Biol Chem. 2004 Nov 26;279(48):49902-9. doi: 10.1074/jbc.M408062200. Epub 2004 Sep 20.

Abstract

Phosphorylation of the sarcoplasmic reticulum Ca(2+)-ATPase (SERCA1a) was studied with time-resolved Fourier transform infrared spectroscopy. ATP and ATP analogs (ITP, 2'- and 3'-dATP) were used to study the effect of the adenine ring and the ribose hydroxyl groups on ATPase phosphorylation. All modifications of ATP altered conformational changes and phosphorylation kinetics. The differences compared with ATP increased in the following order: 3'-dATP > ITP > 2'-dATP. Enzyme phosphorylation with ITP results in larger absorbance changes in the amide I region, indicating larger conformational changes of the Ca(2+)-ATPase. The respective absorbance changes obtained with 3'-dATP are significantly different from the others with different band positions and amplitudes in the amide I region, indicating different conformational changes of the protein backbone. ATPase phosphorylation with 3'-dATP is also much ( approximately 30 times) slower than with ATP. Our results indicate that modifications to functional groups of ATP (the ribose 2'- and 3'-OH and the amino group in the adenine ring) affect gamma-phosphate transfer to the phosphorylation site of the Ca(2+)-ATPase by changing the extent of conformational change and the phosphorylation rate. ADP binding to the ADP-sensitive phosphoenzyme (Ca(2)E1P) stabilizes the closed conformation of Ca(2)E1P.

摘要

利用时间分辨傅里叶变换红外光谱法研究了肌浆网Ca(2+)-ATP酶(SERCA1a)的磷酸化作用。使用ATP及ATP类似物(ITP、2'-和3'-dATP)研究腺嘌呤环和核糖羟基对ATP酶磷酸化的影响。ATP的所有修饰均改变了构象变化和磷酸化动力学。与ATP相比,差异按以下顺序增加:3'-dATP > ITP > 2'-dATP。用ITP进行酶磷酸化导致酰胺I区域的吸光度变化更大,表明Ca(2+)-ATP酶的构象变化更大。用3'-dATP获得的各自吸光度变化与其他在酰胺I区域具有不同谱带位置和幅度的变化显著不同,表明蛋白质主链的构象变化不同。用3'-dATP进行ATP酶磷酸化也比用ATP慢得多(约30倍)。我们的结果表明,对ATP官能团(核糖2'-和3'-OH以及腺嘌呤环中的氨基)的修饰通过改变构象变化程度和磷酸化速率来影响γ-磷酸向Ca(2+)-ATP酶磷酸化位点的转移。ADP与ADP敏感型磷酸酶(Ca(2)E1P)结合可稳定Ca(2)E1P的封闭构象。

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